CN217866985U - Material piling and taking device - Google Patents
Material piling and taking device Download PDFInfo
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- CN217866985U CN217866985U CN202222095890.1U CN202222095890U CN217866985U CN 217866985 U CN217866985 U CN 217866985U CN 202222095890 U CN202222095890 U CN 202222095890U CN 217866985 U CN217866985 U CN 217866985U
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- conveyer belt
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- storehouse
- feed
- windrow
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Abstract
The utility model discloses a material piling and taking device, including running gear, frame, rotary platform, bucket wheel, feeding web, windrow conveyer belt and driving system, rotary platform is last to be equipped with pneumatic cylinder and roating seat, be fixed with the mount on the pneumatic cylinder, the windrow conveyer belt install in on the mount, be equipped with on the roating seat and transport the storehouse, be equipped with feed inlet and discharge gate on transporting the storehouse, feeding web's one end stretches into through the feed inlet transports in the storehouse, and this end is connected in rotating with transporting the storehouse, be equipped with first cylinder on the roating seat, the free end of first cylinder with feeding web's bottom is articulated, feeding web's the other end is installed the bucket wheel, the periphery of transporting the storehouse is equipped with the baffle box, the discharge gate is connected with the discharging pipe of L shape, be equipped with the feed opening on the annular baffle box. The utility model discloses a height and the angle of conveyer belt are convenient for adjust in the setting of rotary platform, pneumatic cylinder, roating seat, first cylinder.
Description
Technical Field
The utility model belongs to material transfer equipment field, in particular to material piling and taking device.
Background
The stacker-reclaimer is a new type high-efficiency continuous loading and unloading machine, mainly used for loading and unloading ore, coal and sand in bulk cargo storage yards of bulk cargo professional wharfs, cement plants, iron and steel plants, large-scale thermal power plants and mines, etc. The machine is widely applied at home and abroad due to high operation efficiency.
At present, the cement plant uses the stacker-reclaimer to pile sand, but traditional cement plant uses the stacker-reclaimer often can only get material and windrow in the place of fixed good sand of piling, receive the restriction of stacker-reclaimer size, current belt formula stacker often adopts fixed overall structure, like in the patent document of publication No. CN110217607A, can only adjust the distance between bucket wheel and the conveyer belt, can't adjust the height and the angle of conveyer belt, in the in-service use process, the flexibility is poor, great limitation has.
SUMMERY OF THE UTILITY MODEL
The utility model provides a stacker-reclaimer to solve the problem that current stacker-reclaimer can't adjust the height and the angle of conveyer belt.
In order to solve the technical problem, the utility model provides a following technical scheme: the utility model provides a material piling and taking device, includes running gear, frame, rotary platform, bucket wheel, feeding web, windrow conveyer belt and driving system, last pneumatic cylinder and the roating seat of being equipped with of rotary platform, be fixed with the mount on the pneumatic cylinder, the windrow conveyer belt install in on the mount, be equipped with the transportation storehouse on the roating seat, be equipped with feed inlet and discharge gate on the transportation storehouse, the one end of feeding web stretches into through the feed inlet and transports in the storehouse, and this end is being rotated with the transportation storehouse and being connected, be equipped with first cylinder on the roating seat, the free end of first cylinder with the bottom of feeding web is articulated, the other end of feeding web is installed the bucket wheel, the periphery of transporting the storehouse is equipped with annular guide groove, the discharge gate is connected with the discharging pipe of L shape, the discharging pipe includes the linkage segment of being connected with the discharge gate and the export section of being connected with the linkage segment, the export section sets up and is located annular guide groove directly over vertically downwards, be equipped with the feed opening on the annular guide groove, the feed opening is located the windrow conveyer belt directly over.
The working principle and the beneficial effects of the scheme are as follows: can adjust the horizontal position of feeding conveyer belt and windrow conveyer belt through rotary platform, then can further adjust feeding conveyer belt's horizontal position through the roating seat, can adjust feeding conveyer belt and windrow conveyer belt's relative position fast through the mode of secondary regulation like this, so that the adaptation is got the position of material point and windrow point, then can adjust feeding conveyer belt ascending rotation in vertical side through first cylinder, with the height of adjustment bucket wheel, and then make the bucket wheel adapt to the position of feed point more, improve the feeding working efficiency of bucket wheel, it goes up and down to drive mount and windrow conveyer belt just through hydraulic pressure, the height of windrow conveyer belt when adjusting the windrow, thereby the height that the material dropped when reducing the windrow. In addition, through the setting of annular baffle box, when the roating seat drives the transportation storehouse and the rotation of feeding conveyer belt or after rotating, the material that the discharging pipe fell keeps falling into annular baffle box, on entering into the windrow conveyer belt through the feed opening, keeps the stability of material transport.
Furthermore, a supporting piece is arranged between the fixing frame and the stacking conveying belt, and the supporting piece is made of a steel rope. Through such setting, improve the stability of windrow conveyer belt.
Furthermore, the support piece adopts a second cylinder, an articulated piece is arranged between the second cylinder and the stacking conveying belt, and the second cylinder and the stacking conveying belt are connected in a rotating mode through the articulated piece. Through such an arrangement, the inclination of the windrow conveyor belt is conveniently adjusted.
Furthermore, the annular material guide groove is obliquely arranged, and the feed opening is positioned at the lowest point of the annular material guide groove. Through such setting, the material of being convenient for flows from the feed opening, avoids the material to pile up in annular baffle box.
Further, the feed opening is connected with a feed pipe, and the feed pipe adopts a telescopic pipe. Through such setting, when the windrow conveyer belt goes up and down, produce the distance change between windrow conveyer belt can and the feed opening, through the setting of telescopic unloading pipe, can adjust the height that the windrow conveyer belt was fallen to the material, avoid the material to drop the difference in height too much and lead to the condition that the material splashes down.
Further, the walking mechanism adopts a crawler belt. Through such setting, improve bearing capacity, adapt to complicated ground.
Drawings
Fig. 1 is a schematic view of a stacker-reclaimer assembly of the present invention;
FIG. 2 is a schematic view of a transfer bin in a stacker reclaimer assembly of the present invention;
fig. 3 is a top view of fig. 2.
Detailed Description
The following is further detailed by way of specific embodiments:
reference numerals in the drawings of the specification include: track 1, frame 2, rotary platform 3, pneumatic cylinder 4, mount 5, windrow conveyer belt 6, support piece 7, transport storehouse 8, roating seat 9, feeding conveyer belt 10, bucket wheel 11, first pneumatic cylinder 12, first articulated elements 13, discharging pipe 14, annular baffle box 15, unloading pipe 16, articulated shaft 17, baffle 18.
The examples are substantially as shown in figures 1 to 3: a material piling and taking device comprises a travelling mechanism, a frame 2, a rotary platform 3, a bucket wheel 11, a feeding conveyer belt 10, a material piling conveyer belt 6 and a power system, wherein the travelling mechanism adopts a crawler belt 1, the crawler belt 1 and the rotary platform 3 are installed on the frame 2, the rotary platform 3 is provided with a hydraulic cylinder 4 and a rotary seat 9, the rotary seat 9 is provided with a transferring bin 8, the transferring bin 8 is provided with a feeding port and a discharging port, an inclined guide plate 18 is connected between the feeding port and the discharging port for facilitating the flowing of materials, one end of the feeding conveyer belt 10 extends into the transferring bin 8 through the feeding port, an articulated shaft 17 is arranged between the feeding conveyer belt 10 and the transferring bin 8, the feeding conveyer belt 10 and the transferring bin 8 are connected in a rotating way in the vertical direction through the articulated shaft 17, the rotary seat 9 is provided with a first cylinder 12, the conventional technology can know that the rotary seat 9 comprises a fixed part and a rotatable part, the fixed part of the rotating seat 9 is installed on the rotating platform 3, the transferring bin 8 and the first air cylinder 12 are installed on the rotatable part of the rotating seat 9, the free end of the first air cylinder 12 is hinged with the bottom of the feeding conveyer belt 10, specifically, the bottom of the feeding conveyer belt 10 is provided with a first hinged part 13, the first air cylinder 12 is rotatably connected with the feeding conveyer belt 10 through the first hinged part 13, the other end of the feeding conveyer belt 10 is provided with a bucket wheel 11, the periphery of the transferring bin 8 is provided with an annular guide chute 15, the discharging port is connected with an L-shaped discharging pipe 14, the discharging pipe 14 comprises a connecting section connected with the discharging port and an outlet section connected with the connecting section, the outlet section is vertically arranged downwards and is positioned right above the annular guide chute 15, the annular guide chute 15 is provided with a discharging port, the annular guide chute 15 is obliquely arranged, and the discharging port is positioned at the lowest point of the annular guide chute 15, the blanking port is connected with a blanking pipe 16, the blanking pipe 16 is an extension pipe, and the lower end of the blanking pipe 16 is positioned right above the stacking conveyor belt 6; be fixed with mount 5 on the pneumatic cylinder 4, windrow conveyer belt 6 installs on mount 5, is equipped with support piece 7 between mount 5 and the windrow conveyer belt 6, and in this embodiment, support piece 7 adopts the steel rope, and in other embodiments, support piece 7 adopts the second cylinder, is equipped with the second articulated elements between second cylinder and the windrow conveyer belt 6, and the two rotates through the second articulated elements to be connected.
The utility model discloses in, can adjust feeding conveyer belt 10 and the horizontal position of windrow conveyer belt 6 through rotary platform 3, then can further adjust feeding conveyer belt 10's horizontal position through roating seat 9, the mode of adjusting through such secondary can adjust feeding conveyer belt 10 and windrow conveyer belt 6's relative position fast, so that the adaptation gets the position of material point and windrow point, then can adjust feeding conveyer belt 10 in the ascending rotation of vertical side through first cylinder 12, with the height of adjustment bucket wheel 11, and then make bucket wheel 11 adapt to the position of feed point more, improve bucket wheel 11's feeding working efficiency, it goes up and down to have just driven mount 5 and windrow conveyer belt 6 through hydraulic pressure, windrow conveyer belt 6's height when adjusting the windrow, thereby the height that the material dropped when reducing the windrow. In addition, through the arrangement of the annular material guiding groove 15, when or after the rotary seat 9 drives the transfer bin 8 and the feeding conveyer belt 10 to rotate, the material dropped from the discharging pipe 14 is kept dropping into the annular material guiding groove 15, and then enters the stacking conveyer belt 6 through the discharging port, so that the stability of material conveying is kept.
The utility model discloses in, the transportation process of material is as follows, gets the material through the bucket wheel, then transports under the effect of feeding conveyer belt and transports the storehouse, and the material flows into the discharging pipe of L shape through the discharge gate of transporting the storehouse, then falls into annular baffle box, falls into the windrow conveyer belt through the unloading pipe again on, falls into the windrow of windrow point realization material from the end of windrow conveyer belt at last.
The above description is only an example of the present invention, and the common general knowledge of the known specific structures and characteristics of the embodiments is not described herein. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the present invention is defined by the claims, and the description of the embodiments and the like in the specification may be used to interpret the claims.
Claims (6)
1. The utility model provides a material piling and taking device, includes running gear, frame, rotary platform, bucket wheel, feeding conveyer belt, windrow conveyer belt and driving system, its characterized in that: be equipped with pneumatic cylinder and roating seat on the rotary platform, be fixed with the mount on the pneumatic cylinder, the windrow conveyer belt install in on the mount, be equipped with the transportation storehouse on the roating seat, be equipped with feed inlet and discharge gate on the transportation storehouse, the one end of feed conveyer belt stretches into through the feed inlet and transports in the storehouse, and this end is being rotated with the transportation storehouse and be connected, be equipped with first cylinder on the roating seat, the free end of first cylinder with feed conveyer belt's bottom is articulated, feed conveyer belt's the other end is installed the bucket wheel, the periphery of transporting the storehouse is equipped with annular baffle box, the discharge gate is connected with the discharging pipe of L shape, the discharging pipe includes the linkage segment of being connected with the discharge gate and the export section of being connected with the linkage segment, the vertical downward setting of export section just is located annular baffle box directly over, be equipped with the feed opening on the annular baffle box, the feed opening is located the windrow conveyer belt directly over.
2. A stacker reclaimer device as in claim 1, wherein: and a supporting piece is arranged between the fixing frame and the stacking conveying belt and adopts a steel rope.
3. A stacker reclaimer device as in claim 2, wherein: the support piece adopts the second cylinder, be equipped with the articulated elements between second cylinder and the windrow conveyer belt, the two passes through the articulated elements rotates the connection.
4. A stacker reclaimer device according to claim 2 or 3, wherein: the annular guide chute is obliquely arranged, and the feed opening is positioned at the lowest point of the annular guide chute.
5. A stacker reclaimer device according to claim 4, wherein: the feed opening is connected with a feed pipe, and the feed pipe adopts a telescopic pipe.
6. A stacker reclaimer device according to claim 5, wherein: the walking mechanism adopts a crawler belt.
Priority Applications (1)
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CN202222095890.1U CN217866985U (en) | 2022-08-10 | 2022-08-10 | Material piling and taking device |
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CN202222095890.1U CN217866985U (en) | 2022-08-10 | 2022-08-10 | Material piling and taking device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118579537A (en) * | 2024-07-30 | 2024-09-03 | 山东港口科技集团潍坊有限公司 | A fully automatic intelligent bulk cargo stacker |
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2022
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118579537A (en) * | 2024-07-30 | 2024-09-03 | 山东港口科技集团潍坊有限公司 | A fully automatic intelligent bulk cargo stacker |
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